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H2 分子的可观测类束缚态。

Observable quasi-bound states of the H2 molecule.

机构信息

Institute of Physics, University of Tartu, Riia 142, 51014 Tartu, Estonia.

出版信息

J Chem Phys. 2012 Mar 21;136(11):114113. doi: 10.1063/1.3692968.

Abstract

Characteristic parameters (energetic positions, widths, etc.) of the 23 spectroscopically observed (or potentially observable) quasi-bound energy levels for the ground state H(2) molecule are determined with high accuracy. The recent advances concerning nonadiabatic, relativistic, and quantum electrodynamical corrections have been taken into consideration. Theoretical approach is based on the careful investigation of the energy dependences of the real stationary scattering-state wave functions (their phase shifts and amplitudes). These energy dependences can be very accurately fitted to simple analytic formulas resulting from the quantum scattering theory. General criteria for the assignment of quasi-bound states are discussed and a new criterion is proposed, which excludes too broad and ambiguous resonances. To implement the proposed approach, a special high-precision computational method was used, which is described in full detail.

摘要

高精度确定了基态 H(2)分子的 23 个光谱观测到(或潜在可观测)准束缚能级的特征参数(能量位置、宽度等)。考虑了最近关于非绝热、相对论和量子电动力学修正的进展。理论方法基于对真实定态散射态波函数(它们的相移和幅度)的能量依赖性的仔细研究。这些能量依赖性可以非常准确地拟合到量子散射理论产生的简单解析公式。讨论了准束缚态的分配的一般标准,并提出了一个新的标准,该标准排除了过于广泛和模糊的共振。为了实现所提出的方法,使用了一种特殊的高精度计算方法,该方法有详细的描述。

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